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首页> 外文期刊>Waste Management >Mechanical compression assisted conductive drying of thin-film dewatered sewage sludge: Process performance, heat and mass transfer behavior
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Mechanical compression assisted conductive drying of thin-film dewatered sewage sludge: Process performance, heat and mass transfer behavior

机译:薄膜脱水污泥的机械压缩辅助导电干燥:工艺性能,热量和传质行为

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摘要

The improvement in heat transfer efficiency between the hot wall and sewage sludge was a critical issue to enhance the conductive drying performance. The drying behavior of thin-film dewatered sewage sludge was investigated based on a conductive dryer assisted with mechanical compression at hot wall temperatures of 120-210 °C. The heat and mass transfer behavior of the sludge in the conductive drying process alone was compared to those in the mechanical compression assisted conductive drying process at three external mechanical loads of 25, 100, and 200 kPa. The average drying rates with mechanical compression were higher than those without mechanical load and were enhanced with the increase of mechanical loads at 210 °C. The extrusion of interfacial vapor film and the reduction of sludge surface roughness was responsible for the enhanced interfacial heat transfer efficiency under mechanical compression. The effective moisture diffusivity, mass transfer coefficient, and effective thermal conductivity were enhanced by mechanical compression. The improved moisture transfer inside sludge and on the open surface, and the decreased heat transfer resistance of sludge was due to the generated pressure-driven flow and the reduced gas cavities in sludge, resulting in the higher drying rates. Additionally, this finding provided reference data for developing a new sludge drying method.
机译:热壁和污水污泥之间的传热效率的提高是提高导电性干燥性能的关键问题。基于在120-210℃的热壁温度下辅助机械压缩的导电干燥器研究了薄膜脱水污水污泥的干燥行为。将污泥在导电干燥方法中的热量和质量传递行为与机械压缩辅助导电干燥过程中的三个外部机械负载相比,在25,100和200kPa的三个外部机械负载中进行了比较。机械压缩的平均干燥速率高于没有机械载荷的干燥率,并且随着210℃的机械载荷的增加而增强。界面蒸汽膜的挤出和污泥表面粗糙度的降低负责机械压缩下的界面传热效率增强。通过机械压缩提高了有效的水分扩散性,传质系数和有效的导热率。改进的污泥和开口表面上的水分转移,以及污泥的减少的传热阻力是由于产生的压力驱动流动和污泥中的降低的气体腔,导致较高的干燥率。此外,该发现提供了用于开发新的污泥干燥方法的参考数据。

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  • 来源
    《Waste Management》 |2021年第5期|41-51|共11页
  • 作者单位

    School of Environmental Science & Technology Dalian University of Technology Industrial Ecology and Environmental Engineering Key Laboratory of Ministry of Education Dalian 116024 Liaoning China;

    School of Environmental Science & Technology Dalian University of Technology Industrial Ecology and Environmental Engineering Key Laboratory of Ministry of Education Dalian 116024 Liaoning China;

    School of Environmental Science & Technology Dalian University of Technology Industrial Ecology and Environmental Engineering Key Laboratory of Ministry of Education Dalian 116024 Liaoning China;

    School of Environmental Science & Technology Dalian University of Technology Industrial Ecology and Environmental Engineering Key Laboratory of Ministry of Education Dalian 116024 Liaoning China;

    School of Environmental Science & Technology Dalian University of Technology Industrial Ecology and Environmental Engineering Key Laboratory of Ministry of Education Dalian 116024 Liaoning China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Conductive drying; Heat and mass transfer; Mechanical compression; Pressure-driven flow; Sewage sludge;

    机译:导电干燥;热量和传质;机械压缩;压力驱动的流动;污水污泥;

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